4.4 Article

Characterization of the neutron/y-ray discrimination performance in an EJ-301 liquid scintillator for application to prompt fission neutron spectrum measurements at CSNS

期刊

RADIATION MEASUREMENTS
卷 151, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.radmeas.2022.106703

关键词

Pulse shape discrimination (PSD); Pulse interpolation; EJ301 scintillator; Fast digitizer

资金

  1. National Natural Science Foun-dation of China [11975318, 11505216]
  2. Educational Commission of Hunan Province of China [19B488]
  3. Natu-ral Science Foundation of Hunan Province of China [2021JJ40444, 2020RC3054, 2019JJ30019]

向作者/读者索取更多资源

This article introduces the FINDA device at the China Spallation Neutron Source (CSNS) for measuring prompt fission neutron spectrum. A comparative study showed that the charge comparison and simplified charge comparison methods have better neutron-gamma discrimination performance than the rise time comparison method.
The FIssion Neutron spectrum Detector Array (FINDA) has been designed for measurement of prompt fission neutron spectrum on the Back-n beam line at the China Spallation Neutron Source (CSNS). In order to test the neutron-y discrimination performance of the EJ301 scintillator that will be used as a detector unit in the FINDA, a comparative study using three conventional digital pulse shape discrimination (PSD) methods has been carried out. An Am-Be source has been used to generate the mixed neutron-y radiation and the waveform data has been obtained with a fast digitizer. Pulse interpolation, baseline restoration and pulses pile-up rejection have been applied for digital pulse processing. Charge comparison (CC) method and simplified charge comparison(SCC) method show a better capability of neutron-y discrimination than rise time comparison(RTC) method over the entire energy range. Rise time comparison method needs a very fast digitizer or pulse interpolation to improve the PSD ability. The analysis of neutron-y discrimination performance of the EJ301 scintillator provides a strong technical support for fast neutron measurement using the FINDA at CSNS.

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